发射率
低发射率
建筑围护结构
被动冷却
太阳增益
材料科学
通风(建筑)
红外线的
环境科学
红外线加热器
空调
航程(航空)
能量(信号处理)
工艺工程
图层(电子)
建筑工程
太阳能
光学
机械工程
复合材料
热的
气象学
工程类
电气工程
物理
量子力学
作者
Yucan Peng,Jian‐Cheng Lai,Xin Xiao,Weiliang Jin,Jiawei Zhou,Yufei Yang,Xin Gao,Jing Tang,Lingling Fan,Shanhui Fan,Zhenan Bao,Yi Cui
标识
DOI:10.1073/pnas.2300856120
摘要
Space heating and cooling consume ~13% of global energy every year. The development of advanced materials that promote energy savings in heating and cooling is gaining increasing attention. To thermally isolate the space of concern and minimize the heat exchange with the outside environment has been recognized as one effective solution. To this end, here, we develop a universal category of colorful low-emissivity paints to form bilayer coatings consisting of an infrared (IR)-reflective bottom layer and an IR-transparent top layer in colors. The colorful visual appearance ensures the aesthetical effect comparable to conventional paints. High mid-infrared reflectance (up to ~80%) is achieved, which is more than 10 times as conventional paints in the same colors, efficiently reducing both heat gain and loss from/to the outside environment. The high near-IR reflectance also benefits reducing solar heat gain in hot days. The advantageous features of these paints strike a balance between energy savings and penalties for heating and cooling throughout the year, providing a comprehensive year-round energy-saving solution adaptable to a wide variety of climatic zones. Taking a typical midrise apartment building as an example, the application of our colorful low-emissivity paints can realize positive heating, ventilation, and air conditioning energy saving, up to 27.24 MJ/m 2 /y (corresponding to the 7.4% saving ratio). Moreover, the versatility of the paint, along with its applicability to diverse surfaces of various shapes and materials, makes the paints extensively useful in a range of scenarios, including building envelopes, transportation, and storage.
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